Ling Wang
lingwang@m.scnu.edu.cn
Chinese, English, German
Guangdong
South China Normal University
Psychology
  • 2006-2010 Ph.D.: Institute of Neuroscience and Medicine, Jülich Research Center, Germany
  • 2004-2006 Master's: Department of Psychology, Peking University
  • 1996-2000 Bachelor's: Department of Mathematics, Hebei University
  • 2012-Present - South China Normal University, School of Psychology - Professor, Doctoral Supervisor
  • 2011-2012 - University of Hong Kong, Faculty of Education - Postdoctoral Researcher
  • 2009-2010 - Max Planck Institute for Neurological Research, Germany - Research Scholar
  • 2000-2003 - Shijiazhuang Huiyuan Communication Technology Company - Software Engineer
  • Trainee Abstract Travel Award (2010): 16th Annual Meeting of the Organization for Human Brain Mapping
Cognitive Control
Decision Making
Learning
Computational Models
  • Cognitive control controls the effect of irrelevant stimulus-response learning, Shi, K., & Wang, L., 2024
  • Sleep deprivation affects interference control: A diffusion model analysis, Luo, J., Hao, C., Ma, N., & Wang, L., 2024
  • The effect of total sleep deprivation on working memory: evidence from diffusion model, Li, J., Cao, Y., Ou, S., Jiang, T., Wang, L., & Ma, N., 2024
  • Learning of irrelevant stimulus-response associations modulates cognitive control, Xia, X., Guo, M., & Wang, L., 2023
  • Learned irrelevant stimulus-response associations and proportion congruency effect: A diffusion model account, Luo, J., Yang, M., & Wang, L., 2023
  • Neural Dynamics Underlying Cognitive Control Modulated by Reinforcement Learning of Irrelevant Stimulus-Response Associations, Zhang, D., Liu, L., Huang, B., & Wang, L., 2022
  • The effect of irrelevant response dimension on stimulus response compatibility, Shi, K., & Wang, L., 2022
  • Reinforcement learning of irrelevant stimulus-response associations modulates cognitive control, Chen, J., Tan, L., Liu, L., & Wang, L., 2021
  • Temporal and spectral dynamics underlying cognitive control modulated by task-irrelevant stimulus-response learning, Cao, Y., Cao, X., Yue, Z., & Wang, L., 2017
  • Implicitly strengthened task-irrelevant stimulus-response associations modulate cognitive control: Evidence from an fMRI study, Xia, T., Li, H., & Wang, L., 2016
  • Neural correlates of the reverse Simon effect in the Hedge and Marsh task, Li, H., Xia, T., & Wang, L., 2015
  • Own-race faces capture attention faster than other-race faces: evidence from response time and the N2pc, Zhou, G., Cheng, Z., Yue, Z., Tredoux, C., He, J., & Wang, L., 2015
  • Neural correlates of the Simon effect modulated by practice with spatial mapping, Wang, L., & Weekes, B., 2014
  • Sensory-guided motor tasks benefit from mental training based on serial prediction, Binder, E., Hagelweide, K., Wang, L. E., Kornysheva, K., Grefkes, C., Fink, G. R., & Schubotz, R. I., 2014
  • Convergence of human brain mapping tools: neuronavigated TMS parameters and fMRI activity in the hand motor area, Sarfeld, A. S., Diekhoff, S., Wang, L. E., Liuzzi, G., Uludag, K., Eickhoff, S. B., Fink, G. R., & Grefkes, C., 2012
  • Degeneration of corpus callosum and recovery of motor function after stroke: A multimodal magnetic resonance imaging study, Wang, L. E., Tittgemeyer, M., Imperati, D., Diekhoff, S., Ameli, M., Fink, G. R., & Grefkes, C., 2012
  • Noradrenergic enhancement improves motor network connectivity in stroke patients, Wang, L. E., Fink, G. R., Diekhoff, S., Rehme, A. K., Eickhoff, S. B., & Grefkes, C., 2011
  • Dynamic causal modeling of cortical activity from the acute to the chronic stage after stroke, Rehme, A. K., Eickhoff, S. B., Wang, L. E., Fink, G. R., & Grefkes, C., 2011
  • Modulating cortical connectivity in stroke patients by rTMS assessed with fMRI and dynamic causal modeling, Grefkes, C., Nowak, D. A., Wang, L. E., Dafotakis, M., Eickhoff, S. B., & Fink, G. R., 2010
  • Noradrenergic modulation of cortical networks engaged in visuomotor processing, Grefkes, C., Wang, L. E., Eickhoff, S. B., & Fink, G. R., 2010
  • Coordinate-based activation likelihood estimation meta-analysis of neuroimaging data: a random-effects approach based on empirical estimates of spatial uncertainty, Eickhoff, S. B., Laird, A. R., Grefkes, C., Wang, L. E., Zilles, K., & Fox, P. T., 2009
  • Effects of timing and movement uncertainty implicate the temporo-parietal junction in the prediction of forthcoming motor actions, Jakobs, O., Wang, L. E., Dafotakis, M., Grefkes, C., Zilles, K., & Eickhoff, S. B., 2009
  • Noradrenergic stimulation and motor performance: differential effects of reboxetine on movement kinematics and visuomotor abilities in healthy human subjects, Wang, L. E., Fink, G. R., Dafotakis, M., & Grefkes, C., 2009
  • The effects of 1 Hz rTMS over the hand area of M1 on movement kinematics of the ipsilateral hand, Dafotakis, M., Grefkes, C., Wang, L., Fink, G. R., & Nowak, D. A., 2008
Cognitive Control Decision Making Learning Computational Models Behavioral Experiments Fmri Eeg Neuroscience Psychology Brain Imaging

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